Application note: Assess transduction efficiency of CFP-tagged nuclear protein with automated cellular imaging
Evaluating and quantitating nuclear transduction.
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Evaluating and quantitating nuclear transduction.
Researchers have found that the surface of SARS-CoV-2 can take on at least 10 different structural states when in contact with ACE2.
There has been growing interest in using high-content imaging methods for studying mitochondria.
Explore this virtual tour of the ImageXpress Pico Automated Cell Imaging System from Molecular Devices, including hardware and software.
A new interactive map of the surface of SARS-CoV-2, featuring the Spike, Envelope and Membrane proteins, has been released for researchers to use.
Explore this virtual tour of the ImageXpress Micro Confocal High-Content Imaging System from Molecular Devices, including hardware and software.
24 September 2020 | By PerkinElmer
During this on-demand webinar, two leading researchers will discuss their innovative approaches to developing novel opportunities for immunotherapy treatments.
Helping in the race to identify effective neutralising antibodies against the spike protein of SARS-CoV-2 virus as the COVID-19 global death rate continues to rise.
A pocket in the SARS-CoV-2 Spike protein has been discovered by researchers, who say it could be a drug target for COVID-19.
Many anti-angiogenic drugs have been developed to use in cancer therapy, while pro-angiogenic molecules may hold potential in regenerative applications.
Inhaled general anaesthetics have been used for over 100 years and continue to be used daily for surgeries around the world. But how do they induce changes to consciousness? This article explores the research that suggests the anaesthetics chloroform and isoflurane disrupt the organisation of lipid rafts within cellular membranes…
Learn how to gain insights and expedite studies for 2D and 3D cellular structures with affordable automated cellular imaging.
Having resolved the structure of psychedelic drugs bound to the 5-HT2A serotonin receptor researchers are now developing new therapeutic drugs.
The non-infectious quantum dot probes are designed to enable researchers to safely study interactions between the SARS-CoV-2 Spike (S) protein and human cells.
According to researchers, the DMBT1S8 molecule can halt inflammation in the respiratory tract through its interaction with the Siglec-8 receptor on immune cells.